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In-situ immobilization of Sr radioactive isotope using nanocrystalline hydroxyapatite

机译:使用纳米晶羟基磷灰石的SR放射性同位素的原位固定

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Hydroxyapatite was used as the inert matrix for in-situ immobilization of strontium (Sr) radioactive isotopes at room temperature. A nano-emulsification method was applied to synthesize Sr-substituted calcium hydroxyapatite (Ca1-xSrx)PO4)(6)(OH)(2). The concentration of incorporated Sr was in the range of 0 = x = 1. Immobilization of Sr was evaluated using a stable isotope instead of radioactive isotope. The effect of strontium concentration on the crystal structure was studied and the results have showed that in the whole concentration range, Sr forms solid solutions with the host hydroxyapatite crystal structure. Powders comprised of nanometre sized particles were obtained and their properties, such as crystallite and particle size, changes in lattice parameters as function of dopant content and thermal stability, were further examined. It was found that the crystal structure of obtained powders is thermally stable at high temperatures. No secondary phases were formed in as-prepared powders or during calcination. The results in this study showed that nano-emulsion strategy provides a simple pathway for synthesis of a single-phase Sr-substituted hydroxyapatite, which can be used for immobilization of Sr radioactive isotopes.
机译:将羟基磷灰石用作在室温下对锶(SR)放射性同位素的原位固定的惰性基质。施用纳米乳化方法合成SR取代羟基磷灰石(CA1-XSRX)PO4)(6)(OH)(2)。掺入的Sr的浓度在0℃的范围内。使用稳定的同位素而不是放射性同位素评估SR的固定化。研究了锶浓度对晶体结构的影响,结果表明,在整个浓度范围内,Sr与宿主羟基磷灰石晶体结构形成固溶体。得到了由纳米尺寸颗粒组成的粉末,得到它们的性质,例如微晶和粒度,与掺杂剂含量和热稳定性的功能的晶格参数的变化和热稳定性。发现得到的粉末的晶体结构在高温下热稳定。在制备的粉末或煅烧过程中没有形成二次相。该研究的结果表明,纳米乳液策略提供了一种简单的途径,用于合成单相SR取代的羟基磷灰石,其可用于固定SR放射性同位素。

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